特发性肺纤维化
肺
病理
肌成纤维细胞
人口
间质细胞
肺纤维化
间充质干细胞
生物
电池类型
纤维化
细胞
医学
内科学
遗传学
环境卫生
作者
Taylor Adams,Jonas C. Schupp,Sergio Poli,Ehab Ayaub,Nir Neumark,Farida Ahangari,Sarah Chu,Benjamin A. Raby,Giuseppe DeIuliis,Michael Januszyk,Qiaonan Duan,Heather A. Arnett,Asim Siddiqui,George R. Washko,Robert Homer,Xiting Yan,Iván O. Rosas,Naftali Kaminski
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2019-09-06
被引量:66
摘要
Abstract We provide a single cell atlas of Idiopathic Pulmonary Fibrosis (IPF), a fatal interstitial lung disease, focusing on resident lung cell populations. By profiling 312,928 cells from 32 IPF, 29 healthy control and 18 chronic obstructive pulmonary disease (COPD) lungs, we demonstrate that IPF is characterized by changes in discrete subpopulations of cells in the three major parenchymal compartments: the epithelium, endothelium and stroma. Among epithelial cells, we identify a novel population of IPF enriched aberrant basaloid cells that co-express basal epithelial markers, mesenchymal markers, senescence markers, developmental transcription factors and are located at the edge of myofibroblast foci in the IPF lung. Among vascular endothelial cells in the in IPF lung parenchyma we identify an expanded cell population transcriptomically identical to vascular endothelial cells normally restricted to the bronchial circulation. We confirm the presence of both populations by immunohistochemistry and independent datasets. Among stromal cells we identify fibroblasts and myofibroblasts in both control and IPF lungs and leverage manifold-based algorithms diffusion maps and diffusion pseudotime to infer the origins of the activated IPF myofibroblast. Our work provides a comprehensive catalogue of the aberrant cellular transcriptional programs in IPF, demonstrates a new framework for analyzing complex disease with scRNAseq, and provides the largest lung disease single-cell atlas to date.
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